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Thermal management of metallic surfaces: evaporation of sessile water droplets on polished and patterned stainless steel

机译:金属表面的热管理:在抛光和图案化不锈钢上蒸发无柄水滴

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This communication focus on the evaporation of sessile water droplets on different states of austenitic stainless steel surfaces: mirror polished, mirror polished and aged and patterned by sputtering. The evolution of the contact angle and of the droplet diameter is presented as a function of time at room temperature. For all the surface states, a constant diameter regime (CCR) is observed. An important aging effect on the contact angle is measured on polished surfaces due to atmospheric contamination. The experimental observations are compared to a quasi-static evaporation model assuming spherical caps. The evolution of the droplet volume as a function of time is almost linear with the evaporation time for all the observed surfaces. This is in accordance with the model prediction for the CCR mode for small initial contact angles. In our experiments, the evaporation time is found to be linearly dependent on the initial contact angle. This dependence is not correctly described by the evaporation model.
机译:这种通信专注于奥氏体不锈钢表面的不同状态下的静脉水滴的蒸发:镜子抛光,镜子抛光和老化并通过溅射图案。接触角和液滴直径的进化在室温下作为时间的函数呈现。对于所有表面状态,观察到恒定直径的制度(CCR)。由于大气污染,在抛光表面上测量了对接触角的重要老化效果。将实验观察结果与假设球形帽的准静态蒸发模型进行比较。随着时间的函数的函数的液滴变化几乎是线性的,对于所有观察到的表面的蒸发时间。这是根据用于小初始接触角的CCR模式的模型预测。在我们的实验中,发现蒸发时间是线性地取决于初始接触角。蒸发模型不正确描述这种依赖性。

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